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Chemistry

D-Index
54
Citations
8364
World Ranking
12825
National Ranking
3394

Overview

Earle Stellwagen is affiliated with the University of Iowa in the United States. Their research primarily spans the fields of Biochemistry, Genetics and Molecular Biology, and Engineering, with a strong focus on Molecular Biology and Biomedical Engineering as notable subfields. Additionally, work in Physical and Theoretical Chemistry and Biophysics is part of their academic contributions.

Their main research topics cover a diverse range of subjects related to nucleic acids and analytical techniques, including:

  • DNA and Nucleic Acid Chemistry
  • Microfluidic and Capillary Electrophoresis Applications
  • Nanopore and Nanochannel Transport Studies
  • Advanced biosensing and bioanalysis techniques
  • Electrostatics and Colloid Interactions
  • RNA and protein synthesis mechanisms
  • RNA Interference and Gene Delivery

Stellwagen has published in several scientific venues, with frequent contributions to the following journals:

  • Biophysical Journal
  • Electrophoresis
  • The Journal of Physical Chemistry B

Significant recent publications by Stellwagen include:

  • "Effect of Internal and Bulge Loops on the Thermal Stability of Small DNA Duplexes," 2024, The Journal of Physical Chemistry B
  • "Monovalent cation localization in DNA A-tracts with different sequences," 2023, Electrophoresis
  • "Flanking AT base pairs affect the localization of monovalent cations in DNA A-tracts," 2023, Electrophoresis
  • "Electrophoretic Mobility of DNA in Solutions of High Ionic Strength," 2020, Biophysical Journal
  • "TBA Markedly Alters A-Tract Oligos," 2020, Biophysical Journal

The scientist frequently collaborates with others in their field. Notable coauthors include:

  • Nancy C. Stellwagen
  • Paul J. Barnard

Best Publications

  • Blue dextran-sepharose: an affinity column for the dinucleotide fold in proteins

    Sioe Thung Thompson;Kathleen Heelan Cass;Earle Stellwagen

  • Measurement of protein concentration with interferences optics.

    Jorge Babul;Earle Stellwagen

  • Haem exposure as the determinate of oxidation-reduction potential of haem proteins.

    Earle Stellwagen

  • The dissociation and reconstitution of aldolase.

    E. Stellwagen;H. K. Schachman

  • Purification and Subunit Structure of Glutathione Reductase from Bakers' Yeast

    Richard D. Mavis;Earle Stellwagen

  • Participation of the protein ligands in the folding of cytochrome c.

    Jorge Babul;Earle Stellwagen

  • The Conformation of Horse Heart Apocytochrome c

    Earle Stellwagen;Richard Rysavy;George Babul

  • Binding of Cibacron blue F3GA to proteins containing the dinucleotide fold.

    Sioe Thung Thompson;Earle Stellwagen

  • Unified description of electrophoresis and diffusion for DNA and other polyions.

    Earle Stellwagen;Yongjun Lu;Nancy C. Stellwagen

  • Effect of central-residue replacements on the helical stability of a monomeric peptide

    Gene Merutka;William Lipton;William Shalongo;Soon Ho Park

  • Distribution of Helicity within the Model Peptide Acetyl(AAQAA)3amide

    William Shalongo;Laxmichand Dugad;Earle Stellwagen

  • Use of blue dextran as a probe for the Nicotinamide Adenine Dinucleotide domain in proteins

    Unknown

  • Determining the electrophoretic mobility and translational diffusion coefficients of DNA molecules in free solution.

    Earle Stellwagen;Nancy C. Stellwagen

  • Effect of the matrix on DNA electrophoretic mobility.

    Nancy C. Stellwagen;Earle Stellwagen

  • A model peptide with enhanced helicity

    Gene Merutka;William Shalongo;Earle Stellwagen

  • Residue helix parameters obtained from dichroic analysis of peptides of defined sequence

    Soon Ho Park;William Shalongo;Earle Stellwagen

  • Effect of amino acid ion pairs on peptide helicity.

    Gene Merutka;Earle Stellwagen

  • Relationship of protein thermostability to accessible surface area

    Earle Stellwagen;Harvey Wilgus

  • The existence of heme-protein coordinate-covalent bonds in denaturing solvents

    Jorge Babul;Earle Stellwagen

  • Predicted distribution of NAD domain among glycolytic enzymes.

    Earle Stellwagen;Robert Cass;Sioe Thung Thompson;Mark Woody

  • Binding of Cibacron blue F3GA to proteins containing the dinucleotide fold (lactate dehydrogenase/phosphoglycerate kinase/spectral titration/NAD domain/transition state analog)

    Sioe Thung Thompson;Earle Stellwagen

Frequent Co-Authors

John E. Donelson
John E. Donelson University of Iowa
Pier Giorgio Righetti
Pier Giorgio Righetti Polytechnic University of Milan
John R. Pringle
John R. Pringle Stanford University
Cecilia Gelfi
Cecilia Gelfi University of Milan

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